PO.MCB06.01 · 分子与细胞生物学
MITF 低表达的耐药性黑色素瘤中对组蛋白去甲基化酶 LSD1 的可成药依赖性
Druggable dependency on histone demethylase LSD1 in MITF-low therapy resistant melanoma
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
黑色素瘤对靶向治疗和免疫治疗的获得性和内在性耐药与一种去分化、间充质样的肿瘤细胞状态相关,该状态的特征为黑色素细胞谱系调控因子 MITF 低表达和受体酪氨酸激酶 AXL 高表达。由于 MITF 主导谱系特异性的存活和分化程序,耐药性 MITF 低/AXL 高黑色素瘤似乎规避了这些程序,转而依赖替代性存活机制。为揭示此类依赖性,我们系统性地分析了来自癌症依赖图谱(Cancer Dependency Map)的全基因组规模 CRISPR-Cas9 敲除筛选,并鉴定出对表观遗传调控因子赖氨酸特异性去甲基化酶 1(LSD1/KDM1A)的选择性脆弱性。有趣的是,覆盖整个 LSD1 编码位点的结构域聚焦 CRISPR 筛选进一步揭示,这种依赖性由 LSD1 的非催化性、支架样功能介导,而非其去甲基化酶活性。在机制上,整合的 LSD1 ChIP-seq、组蛋白 ChIP-seq(H3K4me1/2/3 和 H3K27ac)以及 RNA-seq 分析表明,LSD1 维持一个以染色体分离和神经元去分化为特征的存活程序,该程序通过在与这些通路相关的关键调控因子(如 CDC6)处独特的超增强子激活来协调。通过 LSD1 变构抑制剂破坏 LSD1 的非催化活性,可选择性地在 MITF 低表达黑色素瘤中经由 CDC6 下调诱导 G2/M 期阻滞、转录重编程和生长抑制。引人注目的是,在体外、体内以及患者来源的黑色素瘤类器官中,对 LSD1 非催化功能的遗传学和药理学消除均显著预防或延迟了对 BRAF 抑制和抗 PD-1 治疗耐药的出现。此外,泛癌分析揭示,在其他分化程度低的恶性肿瘤(包括共享去分化转录状态的胰腺癌)中存在类似的 LSD1 依赖性。总之,这些发现界定了一种由表观遗传决定、可治疗靶向的状态,它是多种癌症类型治疗耐药的基础。通过靶向 LSD1 的非催化支架功能,无论是单独还是与靶向和免疫治疗联合,都有可能根除去分化、耐药的肿瘤细胞群,并克服黑色素瘤和其他侵袭性癌症的治疗耐药。
查看英文原文 English abstract
Acquired and intrinsic resistance to targeted and immune therapies in melanoma is associated with an undifferentiated, mesenchymal-like tumor cell state characterized by low expression of the melanocytic lineage regulator MITF and high expression of the receptor tyrosine kinase AXL. Because MITF governs lineage-specific survival and differentiation programs, therapy-resistant MITF-low/AXL-high melanomas appear to evade these programs and instead depend on alternative survival mechanisms. To uncover such dependencies, we systematically interrogated genome-scale CRISPR-Cas9 knockout screens from the Cancer Dependency Map and identified a selective vulnerability to the epigenetic regulator lysine-specific demethylase 1 (LSD1/ KDM1A ). Intriguingly, domain-focused CRISPR screening spanning whole LSD1 coding locus further revealed that this dependency is mediated through non-catalytic, scaffold-like functions of LSD1 rather than its demethylase activity. Mechanistically, integrated LSD1 ChIP-seq, histone ChIP-seq (H3K4me1/2/3 and H3K27ac) and RNA-seq analyses demonstrated that LSD1 sustains a survival program characterized by chromosome segregation and neuronal dedifferentiation in MITF-low melanoma, orchestrated through distinct super-enhancer activation at key regulators, such as CDC6, related to these pathways. Disruption of LSD1's non-catalytic activity by a LSD1 allosteric inhibitor induced G2/M arrest, transcriptional reprogramming, and growth inhibition selectively in MITF-low melanomas via downregulation of CDC6. Strikingly, genetic and pharmacological ablation of LSD1's non catalytic function significantly prevented or delayed the emergence of resistance to BRAF inhibition and anti-PD-1 therapy in vitro, in vivo, and in patient-derived melanoma organoids. Furthermore, pan-cancer analyses revealed a similar LSD1 dependency in other poorly differentiated malignancies, including pancreatic cancer, that share an undifferentiated transcriptional state. Collectively, these findings define an epigenetically determined, therapeutically targetable state that underlies treatment resistance across multiple cancer types. By targeting the non-catalytic scaffolding function of LSD1, either alone or in combination with targeted and immune therapies, it may be possible to eradicate undifferentiated, drug-tolerant tumor cell populations and overcome therapeutic resistance in melanoma and other aggressive cancers.
利益披露 Disclosure
S. Kato, None..
A. Xu, None..
S. Sidoli, None..
G. Boland, None.
R. W. Jenkins,
Incyte Honoraria (Invited speaker).
G1 Therapeutics Honoraria (Advisory board).
Bioxcel Therapeutics Honoraria (Invited speaker).
D. S. B. Hoon, None.
H. Nishikawa,
ARC Therapeutics ).
Ono Pharmaceutical ).
Bristol-Myers Squibb ).
Chugai Pharmaceutical ).
MSD ).
Taiho Pharmaceutical Other, Honoraria.
Daiichi-Sankyo Other, Honoraria.
Kyowa Kirin Other, Honoraria.
Zenyaku Kogyo Other, Honoraria.
Oncolys BioPharma Other, Honoraria.
Debiopharma Other, Honoraria.
Asahi-Kasei Other, Honoraria.
Sysmex Other, Honoraria.
Fujifilm Other, Honoraria.
SRL Other, Honoraria.
Astellas Pharmaceutical Other, Honoraria.
Sumitomo Dainippon Pharma Other, Honoraria.
BD Japan Other, Honoraria.
D. E. Fisher,
Soltego Other, Co-founder.
Tasca Other.
Pierre Fabre Other.
Coherent Medicines Other.
Biocoz Other.
AME Therapeutics Other.